Nova Patents
US9603546B2

Phantom for diffusion MRI imaging

Summary by NHIP

Phantom for diffusion MRI calibration

The method calibrates a diffusion MRI device using a phantom containing a homogeneous aqueous solution of polyvinyl pyrrolidone with a mean molecular weight of 5 to 1000 kDa. This solution exhibits a viscosity ranging from about 102 to about 106 centistokes and a diffusivity matching target mammalian tissue.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

A phantom calibration body (12) for calibrating diffusion MRI device (16) that mimics a material such as a mammalian tissue is disclosed. The phantom calibration body (12) includes a homogeneous aqueous solution (30) that contains a mixture of low molecular-weight and high molecular-weight polymers housed in a container (14) that is placed in the diffusion MRI device (16) for obtaining one or more diffusion MRI images of the phantom calibration body (12). A measure of diffusivity is calculated for each of the one or more diffusion MRI images in order to calibrate the diffusion MRI device. Methods of using the phantom calibration body (12) to calibrate diffusion MRI device (16) are also disclosed.

US9603546B2, drawing sheet 1
Sheet 1 of 13

Term

7.7 yearsleft in the term

Expires 9 June 2034, including 1,595 days of term adjustment.

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15 claims: 2 independent, 13 dependent

  1. 1
    Broadest claimClaim Score 48, average(NHIP)A method of calibrating a diffusion MRI device comprising:providing a phantom calibration body comprising: a homogenous aqueous solution of polyvinyl pyrrolidone having a distribution of molecular weights with a mean of 5-1000 kiloDaltons (kDa);the homogenous aqueous solution having a diffusivity that is essentially the same as a target mammalian tissue and a viscosity ranging from about 102 centistokes (cSt) to about 106 cSt;placing the phantom calibration body in a diffusion MRI device;obtaining diffusion imaging data of the phantom calibration body by scanning the phantom calibration body with the diffusion MRI device, wherein the MRI device comprises one or more processors and wherein the diffusion imaging data are stored on at least one of the one or more processors;calculating a diffusivity measurement based on the diffusion imaging data that is indicative of water diffusivity of the homogeneous aqueous solution, wherein the diffusivity measurement is calculated by at least one of the one or more processors;and calibrating the diffusion MRI device based on the calculated diffusivity measurement.
  2. 9
    A method of calibrating a resolution performance parameter of a diffusion MRI device comprising:providing a phantom calibration body comprising one or more known phantom dimensions, and the provided phantom further comprising: a homogenous aqueous solution of polyvinyl pyrrolidone having a distribution of molecular weights with a mean of 5-1000 kiloDaltons (kDa);the homogenous aqueous solution having a diffusivity that is essentially the same as a target mammalian tissue;and the homogenous aqueous solution also having a viscosity ranging from about 10 2 centistokes (cSt) to about 10 6 cSt;placing the phantom calibration body in a diffusion MRI device;obtaining one or more diffusion-weighted images of the phantom calibration body by scanning the phantom calibration body with the diffusion MRI device, wherein the MRI device comprises one or more processors and wherein the diffusion-weighted images are stored on at least one of the one or more processors;obtaining, from the one or more processors, one or more image dimensions from the obtained diffusion-weighted images, wherein the image dimensions correspond to the one or more known phantom dimensions;comparing, using at least one of the one or more processors, the one or more known phantom dimensions to the one or more image dimensions in order to determine the resolution performance parameter that is being calibrated with the resolution performance parameter being selected from image resolution and image distortion;and calibrating the resolution performance parameter of the diffusion MRI device based on the comparison.